Paper
11 October 2023 Design and application of hydrogen energy trading system based on blockchain technology
Yong Zeng, Qiyong Liu, Jiayin Wang, Yixin Luo
Author Affiliations +
Proceedings Volume 12918, Fourth International Conference on Computer Science and Communication Technology (ICCSCT 2023); 129181U (2023) https://doi.org/10.1117/12.3009443
Event: International Conference on Computer Science and Communication Technology (ICCSCT 2023), 2023, Wuhan, China
Abstract
In recent years, with the continuous increase of renewable energy installation capacity, China has been facing increasingly severe problems of abandoned wind, abandoned light and abandoned water. Hydrogen energy as a feasible solution to this problem has attracted widespread attention. As an emerging secondary energy source, hydrogen faces trust and efficiency challenges in transactions due to its short development time and immature market, urgently requiring an optimized transaction mechanism and a trusted and efficient trading environment to adapt to complex trading markets. Therefore, this paper constructs a blockchain-based hydrogen energy trading system. Firstly, it proposes a mechanism for generating consumption vouchers for hydrogen energy, transactions and traceability. Then it designs the overall architecture system based on blockchain technology with core capabilities such as efficient consensus mechanisms, trustworthy transactions, identity authentication and credit evaluation to build the hydrogen energy trading system. Finally, the testing is conducted on multiple devices with multiple nodes deployed, which verifies the completeness and practicability of the system.
(2023) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Yong Zeng, Qiyong Liu, Jiayin Wang, and Yixin Luo "Design and application of hydrogen energy trading system based on blockchain technology", Proc. SPIE 12918, Fourth International Conference on Computer Science and Communication Technology (ICCSCT 2023), 129181U (11 October 2023); https://doi.org/10.1117/12.3009443
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KEYWORDS
Hydrogen energy

Blockchain

Hydrogen

Data storage

Design and modelling

Renewable energy

Data privacy

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